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Dan Gohmanf17a25c2007-07-18 16:29:46 +00001//===- CrashDebugger.cpp - Debug compilation crashes ----------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner5f5a5732007-12-29 20:44:31 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file defines the bugpoint internals that narrow down compilation crashes
11//
12//===----------------------------------------------------------------------===//
13
14#include "BugDriver.h"
15#include "ToolRunner.h"
16#include "ListReducer.h"
Chris Lattner86a23b12008-04-28 00:04:58 +000017#include "llvm/Constants.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000018#include "llvm/DerivedTypes.h"
19#include "llvm/Instructions.h"
20#include "llvm/Module.h"
21#include "llvm/Pass.h"
22#include "llvm/PassManager.h"
23#include "llvm/ValueSymbolTable.h"
24#include "llvm/Analysis/Verifier.h"
25#include "llvm/Support/CFG.h"
26#include "llvm/Transforms/Scalar.h"
27#include "llvm/Transforms/Utils/Cloning.h"
28#include "llvm/Support/FileUtilities.h"
29#include "llvm/Support/CommandLine.h"
30#include <fstream>
31#include <set>
32using namespace llvm;
33
34namespace {
35 cl::opt<bool>
36 KeepMain("keep-main",
37 cl::desc("Force function reduction to keep main"),
38 cl::init(false));
39}
40
41namespace llvm {
42 class ReducePassList : public ListReducer<const PassInfo*> {
43 BugDriver &BD;
44 public:
45 ReducePassList(BugDriver &bd) : BD(bd) {}
46
47 // doTest - Return true iff running the "removed" passes succeeds, and
48 // running the "Kept" passes fail when run on the output of the "removed"
49 // passes. If we return true, we update the current module of bugpoint.
50 //
51 virtual TestResult doTest(std::vector<const PassInfo*> &Removed,
52 std::vector<const PassInfo*> &Kept);
53 };
54}
55
56ReducePassList::TestResult
57ReducePassList::doTest(std::vector<const PassInfo*> &Prefix,
58 std::vector<const PassInfo*> &Suffix) {
59 sys::Path PrefixOutput;
60 Module *OrigProgram = 0;
61 if (!Prefix.empty()) {
62 std::cout << "Checking to see if these passes crash: "
63 << getPassesString(Prefix) << ": ";
64 std::string PfxOutput;
65 if (BD.runPasses(Prefix, PfxOutput))
66 return KeepPrefix;
67
68 PrefixOutput.set(PfxOutput);
69 OrigProgram = BD.Program;
70
71 BD.Program = ParseInputFile(PrefixOutput.toString());
72 if (BD.Program == 0) {
73 std::cerr << BD.getToolName() << ": Error reading bitcode file '"
74 << PrefixOutput << "'!\n";
75 exit(1);
76 }
77 PrefixOutput.eraseFromDisk();
78 }
79
80 std::cout << "Checking to see if these passes crash: "
81 << getPassesString(Suffix) << ": ";
82
83 if (BD.runPasses(Suffix)) {
84 delete OrigProgram; // The suffix crashes alone...
85 return KeepSuffix;
86 }
87
88 // Nothing failed, restore state...
89 if (OrigProgram) {
90 delete BD.Program;
91 BD.Program = OrigProgram;
92 }
93 return NoFailure;
94}
95
96namespace {
97 /// ReduceCrashingGlobalVariables - This works by removing the global
98 /// variable's initializer and seeing if the program still crashes. If it
99 /// does, then we keep that program and try again.
100 ///
101 class ReduceCrashingGlobalVariables : public ListReducer<GlobalVariable*> {
102 BugDriver &BD;
103 bool (*TestFn)(BugDriver &, Module *);
104 public:
105 ReduceCrashingGlobalVariables(BugDriver &bd,
106 bool (*testFn)(BugDriver&, Module*))
107 : BD(bd), TestFn(testFn) {}
108
109 virtual TestResult doTest(std::vector<GlobalVariable*>& Prefix,
110 std::vector<GlobalVariable*>& Kept) {
111 if (!Kept.empty() && TestGlobalVariables(Kept))
112 return KeepSuffix;
113
114 if (!Prefix.empty() && TestGlobalVariables(Prefix))
115 return KeepPrefix;
116
117 return NoFailure;
118 }
119
120 bool TestGlobalVariables(std::vector<GlobalVariable*>& GVs);
121 };
122}
123
124bool
125ReduceCrashingGlobalVariables::TestGlobalVariables(
126 std::vector<GlobalVariable*>& GVs) {
127 // Clone the program to try hacking it apart...
Andrew Lenharth7db97992008-03-24 22:16:14 +0000128 DenseMap<const Value*, Value*> ValueMap;
129 Module *M = CloneModule(BD.getProgram(), ValueMap);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000130
131 // Convert list to set for fast lookup...
132 std::set<GlobalVariable*> GVSet;
133
134 for (unsigned i = 0, e = GVs.size(); i != e; ++i) {
Andrew Lenharth7db97992008-03-24 22:16:14 +0000135 GlobalVariable* CMGV = cast<GlobalVariable>(ValueMap[GVs[i]]);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000136 assert(CMGV && "Global Variable not in module?!");
137 GVSet.insert(CMGV);
138 }
139
140 std::cout << "Checking for crash with only these global variables: ";
141 PrintGlobalVariableList(GVs);
142 std::cout << ": ";
143
144 // Loop over and delete any global variables which we aren't supposed to be
145 // playing with...
146 for (Module::global_iterator I = M->global_begin(), E = M->global_end();
147 I != E; ++I)
148 if (I->hasInitializer()) {
149 I->setInitializer(0);
150 I->setLinkage(GlobalValue::ExternalLinkage);
151 }
152
153 // Try running the hacked up program...
154 if (TestFn(BD, M)) {
155 BD.setNewProgram(M); // It crashed, keep the trimmed version...
156
157 // Make sure to use global variable pointers that point into the now-current
158 // module.
159 GVs.assign(GVSet.begin(), GVSet.end());
160 return true;
161 }
162
163 delete M;
164 return false;
165}
166
167namespace llvm {
168 /// ReduceCrashingFunctions reducer - This works by removing functions and
169 /// seeing if the program still crashes. If it does, then keep the newer,
170 /// smaller program.
171 ///
172 class ReduceCrashingFunctions : public ListReducer<Function*> {
173 BugDriver &BD;
174 bool (*TestFn)(BugDriver &, Module *);
175 public:
176 ReduceCrashingFunctions(BugDriver &bd,
177 bool (*testFn)(BugDriver &, Module *))
178 : BD(bd), TestFn(testFn) {}
179
180 virtual TestResult doTest(std::vector<Function*> &Prefix,
181 std::vector<Function*> &Kept) {
182 if (!Kept.empty() && TestFuncs(Kept))
183 return KeepSuffix;
184 if (!Prefix.empty() && TestFuncs(Prefix))
185 return KeepPrefix;
186 return NoFailure;
187 }
188
189 bool TestFuncs(std::vector<Function*> &Prefix);
190 };
191}
192
193bool ReduceCrashingFunctions::TestFuncs(std::vector<Function*> &Funcs) {
194
195 //if main isn't present, claim there is no problem
196 if (KeepMain && find(Funcs.begin(), Funcs.end(),
197 BD.getProgram()->getFunction("main")) == Funcs.end())
198 return false;
199
200 // Clone the program to try hacking it apart...
201 Module *M = CloneModule(BD.getProgram());
202
203 // Convert list to set for fast lookup...
204 std::set<Function*> Functions;
205 for (unsigned i = 0, e = Funcs.size(); i != e; ++i) {
206 // FIXME: bugpoint should add names to all stripped symbols.
207 assert(!Funcs[i]->getName().empty() &&
208 "Bugpoint doesn't work on stripped modules yet PR718!");
209 Function *CMF = M->getFunction(Funcs[i]->getName());
210 assert(CMF && "Function not in module?!");
211 assert(CMF->getFunctionType() == Funcs[i]->getFunctionType() && "wrong ty");
212 Functions.insert(CMF);
213 }
214
215 std::cout << "Checking for crash with only these functions: ";
216 PrintFunctionList(Funcs);
217 std::cout << ": ";
218
219 // Loop over and delete any functions which we aren't supposed to be playing
220 // with...
221 for (Module::iterator I = M->begin(), E = M->end(); I != E; ++I)
222 if (!I->isDeclaration() && !Functions.count(I))
223 DeleteFunctionBody(I);
224
225 // Try running the hacked up program...
226 if (TestFn(BD, M)) {
227 BD.setNewProgram(M); // It crashed, keep the trimmed version...
228
229 // Make sure to use function pointers that point into the now-current
230 // module.
231 Funcs.assign(Functions.begin(), Functions.end());
232 return true;
233 }
234 delete M;
235 return false;
236}
237
238
239namespace {
240 /// ReduceCrashingBlocks reducer - This works by setting the terminators of
241 /// all terminators except the specified basic blocks to a 'ret' instruction,
242 /// then running the simplify-cfg pass. This has the effect of chopping up
243 /// the CFG really fast which can reduce large functions quickly.
244 ///
245 class ReduceCrashingBlocks : public ListReducer<const BasicBlock*> {
246 BugDriver &BD;
247 bool (*TestFn)(BugDriver &, Module *);
248 public:
249 ReduceCrashingBlocks(BugDriver &bd, bool (*testFn)(BugDriver &, Module *))
250 : BD(bd), TestFn(testFn) {}
251
252 virtual TestResult doTest(std::vector<const BasicBlock*> &Prefix,
253 std::vector<const BasicBlock*> &Kept) {
254 if (!Kept.empty() && TestBlocks(Kept))
255 return KeepSuffix;
256 if (!Prefix.empty() && TestBlocks(Prefix))
257 return KeepPrefix;
258 return NoFailure;
259 }
260
261 bool TestBlocks(std::vector<const BasicBlock*> &Prefix);
262 };
263}
264
265bool ReduceCrashingBlocks::TestBlocks(std::vector<const BasicBlock*> &BBs) {
266 // Clone the program to try hacking it apart...
267 Module *M = CloneModule(BD.getProgram());
268
269 // Convert list to set for fast lookup...
270 std::set<BasicBlock*> Blocks;
271 for (unsigned i = 0, e = BBs.size(); i != e; ++i) {
272 // Convert the basic block from the original module to the new module...
273 const Function *F = BBs[i]->getParent();
274 Function *CMF = M->getFunction(F->getName());
275 assert(CMF && "Function not in module?!");
276 assert(CMF->getFunctionType() == F->getFunctionType() && "wrong type?");
277
278 // Get the mapped basic block...
279 Function::iterator CBI = CMF->begin();
280 std::advance(CBI, std::distance(F->begin(),
281 Function::const_iterator(BBs[i])));
282 Blocks.insert(CBI);
283 }
284
285 std::cout << "Checking for crash with only these blocks:";
286 unsigned NumPrint = Blocks.size();
287 if (NumPrint > 10) NumPrint = 10;
288 for (unsigned i = 0, e = NumPrint; i != e; ++i)
289 std::cout << " " << BBs[i]->getName();
290 if (NumPrint < Blocks.size())
291 std::cout << "... <" << Blocks.size() << " total>";
292 std::cout << ": ";
293
294 // Loop over and delete any hack up any blocks that are not listed...
295 for (Module::iterator I = M->begin(), E = M->end(); I != E; ++I)
296 for (Function::iterator BB = I->begin(), E = I->end(); BB != E; ++BB)
297 if (!Blocks.count(BB) && BB->getTerminator()->getNumSuccessors()) {
298 // Loop over all of the successors of this block, deleting any PHI nodes
299 // that might include it.
300 for (succ_iterator SI = succ_begin(BB), E = succ_end(BB); SI != E; ++SI)
301 (*SI)->removePredecessor(BB);
302
Chris Lattner86a23b12008-04-28 00:04:58 +0000303 TerminatorInst *BBTerm = BB->getTerminator();
304
305 if (isa<StructType>(BBTerm->getType()))
306 BBTerm->replaceAllUsesWith(UndefValue::get(BBTerm->getType()));
307 else if (BB->getTerminator()->getType() != Type::VoidTy)
308 BBTerm->replaceAllUsesWith(Constant::getNullValue(BBTerm->getType()));
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000309
Chris Lattner86a23b12008-04-28 00:04:58 +0000310 // Replace the old terminator instruction.
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000311 BB->getInstList().pop_back();
Chris Lattner86a23b12008-04-28 00:04:58 +0000312 new UnreachableInst(BB);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000313 }
314
315 // The CFG Simplifier pass may delete one of the basic blocks we are
316 // interested in. If it does we need to take the block out of the list. Make
317 // a "persistent mapping" by turning basic blocks into <function, name> pairs.
318 // This won't work well if blocks are unnamed, but that is just the risk we
319 // have to take.
320 std::vector<std::pair<Function*, std::string> > BlockInfo;
321
322 for (std::set<BasicBlock*>::iterator I = Blocks.begin(), E = Blocks.end();
323 I != E; ++I)
324 BlockInfo.push_back(std::make_pair((*I)->getParent(), (*I)->getName()));
325
326 // Now run the CFG simplify pass on the function...
327 PassManager Passes;
328 Passes.add(createCFGSimplificationPass());
329 Passes.add(createVerifierPass());
330 Passes.run(*M);
331
332 // Try running on the hacked up program...
333 if (TestFn(BD, M)) {
334 BD.setNewProgram(M); // It crashed, keep the trimmed version...
335
336 // Make sure to use basic block pointers that point into the now-current
337 // module, and that they don't include any deleted blocks.
338 BBs.clear();
339 for (unsigned i = 0, e = BlockInfo.size(); i != e; ++i) {
340 ValueSymbolTable &ST = BlockInfo[i].first->getValueSymbolTable();
341 Value* V = ST.lookup(BlockInfo[i].second);
342 if (V && V->getType() == Type::LabelTy)
343 BBs.push_back(cast<BasicBlock>(V));
344 }
345 return true;
346 }
347 delete M; // It didn't crash, try something else.
348 return false;
349}
350
351/// DebugACrash - Given a predicate that determines whether a component crashes
352/// on a program, try to destructively reduce the program while still keeping
353/// the predicate true.
354static bool DebugACrash(BugDriver &BD, bool (*TestFn)(BugDriver &, Module *)) {
355 // See if we can get away with nuking some of the global variable initializers
356 // in the program...
357 if (BD.getProgram()->global_begin() != BD.getProgram()->global_end()) {
358 // Now try to reduce the number of global variable initializers in the
359 // module to something small.
360 Module *M = CloneModule(BD.getProgram());
361 bool DeletedInit = false;
362
363 for (Module::global_iterator I = M->global_begin(), E = M->global_end();
364 I != E; ++I)
365 if (I->hasInitializer()) {
366 I->setInitializer(0);
367 I->setLinkage(GlobalValue::ExternalLinkage);
368 DeletedInit = true;
369 }
370
371 if (!DeletedInit) {
372 delete M; // No change made...
373 } else {
374 // See if the program still causes a crash...
375 std::cout << "\nChecking to see if we can delete global inits: ";
376
377 if (TestFn(BD, M)) { // Still crashes?
378 BD.setNewProgram(M);
379 std::cout << "\n*** Able to remove all global initializers!\n";
380 } else { // No longer crashes?
381 std::cout << " - Removing all global inits hides problem!\n";
382 delete M;
383
384 std::vector<GlobalVariable*> GVs;
385
386 for (Module::global_iterator I = BD.getProgram()->global_begin(),
387 E = BD.getProgram()->global_end(); I != E; ++I)
388 if (I->hasInitializer())
389 GVs.push_back(I);
390
391 if (GVs.size() > 1 && !BugpointIsInterrupted) {
392 std::cout << "\n*** Attempting to reduce the number of global "
393 << "variables in the testcase\n";
394
395 unsigned OldSize = GVs.size();
396 ReduceCrashingGlobalVariables(BD, TestFn).reduceList(GVs);
397
398 if (GVs.size() < OldSize)
399 BD.EmitProgressBitcode("reduced-global-variables");
400 }
401 }
402 }
403 }
404
405 // Now try to reduce the number of functions in the module to something small.
406 std::vector<Function*> Functions;
407 for (Module::iterator I = BD.getProgram()->begin(),
408 E = BD.getProgram()->end(); I != E; ++I)
409 if (!I->isDeclaration())
410 Functions.push_back(I);
411
412 if (Functions.size() > 1 && !BugpointIsInterrupted) {
413 std::cout << "\n*** Attempting to reduce the number of functions "
414 "in the testcase\n";
415
416 unsigned OldSize = Functions.size();
417 ReduceCrashingFunctions(BD, TestFn).reduceList(Functions);
418
419 if (Functions.size() < OldSize)
420 BD.EmitProgressBitcode("reduced-function");
421 }
422
423 // Attempt to delete entire basic blocks at a time to speed up
424 // convergence... this actually works by setting the terminator of the blocks
425 // to a return instruction then running simplifycfg, which can potentially
426 // shrinks the code dramatically quickly
427 //
428 if (!DisableSimplifyCFG && !BugpointIsInterrupted) {
429 std::vector<const BasicBlock*> Blocks;
430 for (Module::const_iterator I = BD.getProgram()->begin(),
431 E = BD.getProgram()->end(); I != E; ++I)
432 for (Function::const_iterator FI = I->begin(), E = I->end(); FI !=E; ++FI)
433 Blocks.push_back(FI);
434 ReduceCrashingBlocks(BD, TestFn).reduceList(Blocks);
435 }
436
437 // FIXME: This should use the list reducer to converge faster by deleting
438 // larger chunks of instructions at a time!
439 unsigned Simplification = 2;
440 do {
441 if (BugpointIsInterrupted) break;
442 --Simplification;
443 std::cout << "\n*** Attempting to reduce testcase by deleting instruc"
444 << "tions: Simplification Level #" << Simplification << '\n';
445
446 // Now that we have deleted the functions that are unnecessary for the
447 // program, try to remove instructions that are not necessary to cause the
448 // crash. To do this, we loop through all of the instructions in the
449 // remaining functions, deleting them (replacing any values produced with
450 // nulls), and then running ADCE and SimplifyCFG. If the transformed input
451 // still triggers failure, keep deleting until we cannot trigger failure
452 // anymore.
453 //
454 unsigned InstructionsToSkipBeforeDeleting = 0;
455 TryAgain:
456
457 // Loop over all of the (non-terminator) instructions remaining in the
458 // function, attempting to delete them.
459 unsigned CurInstructionNum = 0;
460 for (Module::const_iterator FI = BD.getProgram()->begin(),
461 E = BD.getProgram()->end(); FI != E; ++FI)
462 if (!FI->isDeclaration())
463 for (Function::const_iterator BI = FI->begin(), E = FI->end(); BI != E;
464 ++BI)
465 for (BasicBlock::const_iterator I = BI->begin(), E = --BI->end();
466 I != E; ++I, ++CurInstructionNum)
467 if (InstructionsToSkipBeforeDeleting) {
468 --InstructionsToSkipBeforeDeleting;
469 } else {
470 if (BugpointIsInterrupted) goto ExitLoops;
471
Matthijs Kooijmane815c812008-07-29 08:55:30 +0000472 std::cout << "Checking instruction: " << *I;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000473 Module *M = BD.deleteInstructionFromProgram(I, Simplification);
474
475 // Find out if the pass still crashes on this pass...
476 if (TestFn(BD, M)) {
477 // Yup, it does, we delete the old module, and continue trying
478 // to reduce the testcase...
479 BD.setNewProgram(M);
480 InstructionsToSkipBeforeDeleting = CurInstructionNum;
481 goto TryAgain; // I wish I had a multi-level break here!
482 }
483
484 // This pass didn't crash without this instruction, try the next
485 // one.
486 delete M;
487 }
488
489 if (InstructionsToSkipBeforeDeleting) {
490 InstructionsToSkipBeforeDeleting = 0;
491 goto TryAgain;
492 }
493
494 } while (Simplification);
495ExitLoops:
496
497 // Try to clean up the testcase by running funcresolve and globaldce...
498 if (!BugpointIsInterrupted) {
499 std::cout << "\n*** Attempting to perform final cleanups: ";
500 Module *M = CloneModule(BD.getProgram());
501 M = BD.performFinalCleanups(M, true);
502
503 // Find out if the pass still crashes on the cleaned up program...
504 if (TestFn(BD, M)) {
505 BD.setNewProgram(M); // Yup, it does, keep the reduced version...
506 } else {
507 delete M;
508 }
509 }
510
511 BD.EmitProgressBitcode("reduced-simplified");
512
513 return false;
514}
515
516static bool TestForOptimizerCrash(BugDriver &BD, Module *M) {
517 return BD.runPasses(M);
518}
519
520/// debugOptimizerCrash - This method is called when some pass crashes on input.
521/// It attempts to prune down the testcase to something reasonable, and figure
522/// out exactly which pass is crashing.
523///
524bool BugDriver::debugOptimizerCrash(const std::string &ID) {
525 std::cout << "\n*** Debugging optimizer crash!\n";
526
527 // Reduce the list of passes which causes the optimizer to crash...
528 if (!BugpointIsInterrupted)
529 ReducePassList(*this).reduceList(PassesToRun);
530
531 std::cout << "\n*** Found crashing pass"
532 << (PassesToRun.size() == 1 ? ": " : "es: ")
533 << getPassesString(PassesToRun) << '\n';
534
535 EmitProgressBitcode(ID);
536
537 return DebugACrash(*this, TestForOptimizerCrash);
538}
539
540static bool TestForCodeGenCrash(BugDriver &BD, Module *M) {
541 try {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000542 BD.compileProgram(M);
543 std::cerr << '\n';
544 return false;
545 } catch (ToolExecutionError &) {
546 std::cerr << "<crash>\n";
547 return true; // Tool is still crashing.
548 }
549}
550
551/// debugCodeGeneratorCrash - This method is called when the code generator
552/// crashes on an input. It attempts to reduce the input as much as possible
553/// while still causing the code generator to crash.
554bool BugDriver::debugCodeGeneratorCrash() {
555 std::cerr << "*** Debugging code generator crash!\n";
556
557 return DebugACrash(*this, TestForCodeGenCrash);
558}